Low Concentration Mercury Sorption Mechanisms and Control by Calcium-Based Sorbents: Application in Coal-Fired Processes

Author:

Ghorishi S. Behrooz1,Sedman Charles B.2

Affiliation:

1. a ARCADIS Geraghty & Miller , Research Triangle Park , , North Carolina , USA

2. b National Risk Management Research Laboratory, Air Pollution Prevention and Control Division, Research Triangle Park, North Carolina , USA

Publisher

Informa UK Limited

Subject

Management, Monitoring, Policy and Law,Waste Management and Disposal

Reference9 articles.

1. U.S. Environmental Protection Agency. Mercury Study Report to Congress, Book 1 of 2, External Review Draft, Environmental Criteria and Assessment Office: Cincinnati, OH, January 1995, EPA-600/P-94/002a (NTIS PB95-167334).

2. Chang R.; Offen, G.R. “Mercury emission control technologies: An EPRI synopsis,” Power Engineering 1995, November.

3. Redinger, K.E. Babcock & Wilcox to William Maxwell, letter, U.S. EPA, dated Nov. 7, 1996, attachment p. 5.

4. Laudal, D.L.; Heidt, M.K.; Brown, T.D.; Nott, B.R.; Prestbo, E.P. Mercury Speciation: A Comparison between EPA Method 29 and Other Sampling Methods. In Proceedings of the 89th Air & Waste Management Association Annual Meeting; A&WMA: Pittsburgh, PA, 1996, 96–WP64A.04.

5. Chang, R.; Bustard, C.J.; Schott, G.; Hunt, T.; Noble, H.; Cooper, J. Pilot-scale Evaluation of Carbon Compound Additives for the Removal of Trace Metals at Coal-fired Utility Power Plants. Presented at the Second International Conference on Managing Hazardous Air Pollutants, Washington, DC, July 13-15, 1993.

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